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褐飞虱热休克70 kDa同源蛋白3对其生存至关重要并抑制植物免疫反应。

Heat Shock 70 kDa Protein Cognate 3 of Brown Planthopper Is Required for Survival and Suppresses Immune Response in Plants.

作者信息

Yang Houhong, Zhang Xiaoya, Li Hanjing, Ye Yuxuan, Li Zhipeng, Han Xiao, Hu Yanru, Zhang Chuanxi, Jiang Yanjuan

机构信息

Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Kunming 650223, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Insects. 2022 Mar 17;13(3):299. doi: 10.3390/insects13030299.

Abstract

The brown planthopper () is a monophagous pest of rice (), which threatens food security around the world. Insect Heat shock proteins 70 kDa (Hsp70s) play a key role in insect growth and development, however, if they also modulate the plant physiological processes is still unclear. In this study, we identified the Heat shock 70 kDa protein cognate 3 (NlHSC70-3) of BPH from compared protein profiles of Nipponbare tissues after BPH infestation via LC/MS. NlHSC70-3 has a predicted signal peptide and displays high transcription levels in the salivary glands, which further supported that it is secreted into plants by BPH during the feeding process. Using RNA interference (RNAi), we showed that NlHSC70-3 is indispensable for the survival of BPH on rice. Most importantly, NlHSC70-3 mediates the plant immune responses including cell death, flg22-induced ROS burst and defense-related gene expression in . These results demonstrate that NlHSC70-3 may function as an effector manipulating plant physiological processes to facilitate pest survival on rice, which provides a new potential target for future pest control.

摘要

褐飞虱(Nilaparvata lugens)是水稻(Oryza sativa)的单食性害虫,对全球粮食安全构成威胁。昆虫热休克蛋白70 kDa(Hsp70s)在昆虫生长发育中起关键作用,然而,它们是否也调节植物生理过程仍不清楚。在本研究中,我们通过液相色谱/质谱(LC/MS)比较褐飞虱侵染后日本晴组织的蛋白质谱,鉴定了褐飞虱的热休克70 kDa蛋白同源物3(NlHSC70-3)。NlHSC70-3具有预测的信号肽,在唾液腺中显示出高转录水平,这进一步支持了它在取食过程中由褐飞虱分泌到植物中。使用RNA干扰(RNAi),我们表明NlHSC70-3对褐飞虱在水稻上的存活是不可或缺的。最重要的是,NlHSC70-3介导植物免疫反应,包括细胞死亡、flg22诱导的活性氧爆发和水稻中防御相关基因的表达。这些结果表明,NlHSC70-3可能作为一种效应因子操纵植物生理过程,以促进害虫在水稻上的存活,这为未来害虫防治提供了一个新的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9ca/8949815/45fe9bcd8468/insects-13-00299-g001.jpg

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